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Sylvain Blaize

Researcher at University of Technology of Troyes

Publications -  129
Citations -  2119

Sylvain Blaize is an academic researcher from University of Technology of Troyes. The author has contributed to research in topics: Near-field scanning optical microscope & Silicon photonics. The author has an hindex of 19, co-authored 125 publications receiving 1893 citations. Previous affiliations of Sylvain Blaize include University of Trinidad and Tobago & Centre national de la recherche scientifique.

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Wavelength-scale stationary-wave integrated Fourier-transform spectrometry

TL;DR: In this paper, the authors present a SWIFTS-based spectrometer relying on an original optical near-field detection method in which optical nanoprobes are used to sample directly the evanescent standing wave in the waveguide.
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Implementation of PT symmetric devices using plasmonics: principle and applications

TL;DR: Practical implementations of the PT symmetric scheme are discussed based on existing attempts to elaborate coupled waveguide in plasmonics, and based also on the recently proposed hybrid plAsmonics waveguide structure with a small low-index gap, the PIROW (Plasmonic Inverse-Rib Optical Waveguide).
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Efficient Directional Coupling between Silicon and Copper Plasmonic Nanoslot Waveguides: toward Metal−Oxide−Silicon Nanophotonics

TL;DR: The realization of key blocks for future plasmonic planar integrated optics, nano-optical couplers, and nanoslot waveguides that are compatible both with the silicon photonics and the CMOS microelectronics are reported on.
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Giant coupling effect between metal nanoparticle chain and optical waveguide.

TL;DR: It is demonstrated that the optical energy carried by a TE dielectric waveguide mode can be totally transferred into a transverse plasmon mode of a coupled metal nanoparticle chain, which opens the way to nanometer scale devices based on localized plasmons in photonic integrated circuits.
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Multiwavelengths DFB waveguide laser arrays in Yb-Er codoped phosphate glass substrate

TL;DR: In this paper, the realization of arrays of 15 distributed feedback lasers integrated on an Er-Yb-doped phosphate glass substrate is reported, where a submicronic corrugated grating has been etched on a comb of Ag/sup +/-Na/sup +/ ion exchanged waveguides with varying diffusion aperture width.